Key Lab of Plant-Soil Interaction, MOE, Center for Resources, Environment, and Food Security, College of Resources and Environmental Sciences, China Agricultural University, Beijing, China.
PLoS One. 2013;8(4):e61031. doi: 10.1371/journal.pone.0061031. Epub 2013 Apr 8.
The inhibitory effect of ammonium on primary root growth has been well documented; however the underlying physiological and molecular mechanisms are still controversial. To avoid ammonium toxicity to shoot growth, we used a vertical two-layer split plate system, in which the upper layer contained nitrate and the lower layer contained ammonium. In this way, nitrogen status was maintained and only the apical part of the root system was exposed to ammonium. Using a kinematic approach, we show here that 1 mM ammonium reduces primary root growth, decreasing both elemental expansion and cell production. Ammonium inhibits the length of elongation zone and the maximum elemental expansion rate. Ammonium also decreases the apparent length of the meristem as well as the number of dividing cells without affecting cell division rate. Moreover, ammonium reduces the number of root cap cells but appears to affect neither the status of root stem cell niche nor the distal auxin maximum at the quiescent center. Ammonium also inhibits root gravitropism and concomitantly down-regulates the expression of two pivotal auxin transporters, AUX1 and PIN2. Insofar as ammonium inhibits root growth rate in AUX1 and PIN2 loss-of-function mutants almost as strongly as in wild type, we conclude that ammonium inhibits root growth and gravitropism by largely distinct pathways.
铵对主根生长的抑制作用已有充分的文献记载;然而,其潜在的生理和分子机制仍存在争议。为了避免铵对地上部分生长的毒性,我们使用了垂直双层分体板系统,其中上层含有硝酸盐,下层含有铵。通过这种方式,可以维持氮素状态,并且只有根系的顶端部分暴露于铵中。通过运动学方法,我们在这里表明,1mM 的铵会抑制主根生长,减少元素扩张和细胞生成。铵抑制伸长区的长度和最大元素扩展率。铵还会减少分生组织的表观长度和分裂细胞的数量,而不影响细胞分裂率。此外,铵会减少根冠细胞的数量,但似乎不会影响根干细胞龛的状态,也不会影响静止中心处的远侧生长素最大值。铵还抑制根向重力性,同时下调两个关键生长素转运蛋白 AUX1 和 PIN2 的表达。由于铵对 aux1 和 pin2 功能丧失突变体的根生长速率的抑制作用几乎与野生型相同,我们得出结论,铵通过很大程度上不同的途径抑制根的生长和向重力性。